A structure for recycling and unwinding of a light strip
Patent Information
- Application Number
- CN202521984269.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-09-15
AI Technical Summary
[0002]在装修装饰、设备照明、临时布光等场景中,灯带因柔性好、亮度高的特点被广泛应用,目前灯带回收多依赖人工卷绕或简易圆柱状收纳辊:人工卷绕时,全凭操作经验控制力度与方向,易因拉扯力度不均、缠绕角度偏差,导致灯带相互堆叠、打结;使用简易收纳辊时,灯带无定向引导结构,卷绕过程中易向收纳辊某一侧偏移,形成局部堆叠,后续展开时需花费大量时间梳理,严重影响作业效率
[0016]本实用新型所涉及的用于灯带的回收及放展的结构,通过螺旋的回收槽结构,灯带可以沿着螺旋轨迹均匀缠绕,避免了传统缠绕方式中灯带相互堆叠、打结的问题,从而减少灯带损坏和使用时的麻烦。
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Figure CN224728121U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of LED strip retraction and deployment structure technology, and in particular to a structure for the retraction and deployment of LED strips. Background Technology
[0002] LED strips are widely used in decoration, equipment lighting, and temporary lighting due to their flexibility and high brightness. Currently, LED strip recycling mostly relies on manual winding or simple cylindrical collection rollers. When winding manually, the force and direction are controlled entirely by the operator's experience. Uneven pulling force and deviation of winding angle can easily cause the LED strips to stack and tangle. When using simple collection rollers, the LED strips have no directional guiding structure and are prone to shifting to one side of the collection roller during the winding process, forming local stacks. Subsequent unwinding requires a lot of time to sort them out, which seriously affects work efficiency. Utility Model Content
[0003] Therefore, the purpose of this utility model is to provide a structure for the recycling and deployment of light strips.
[0004] The present invention adopts the following technical solution:
[0005] A structure for the recycling and deployment of LED strip lights includes a trolley, a recycling assembly mounted on the trolley for recycling the LED strip lights, and a guide assembly mounted on the trolley. The recycling assembly includes a recycling bracket mounted on the trolley, a recycling component rotatably mounted on the recycling bracket, and a recycling drive component mounted on the recycling bracket for driving the recycling component to move. The recycling component includes a rotating roller rotatably mounted on the recycling bracket, a recycling wheel mounted on the rotating roller, and a recycling groove disposed on the recycling wheel. The recycling groove is an externally threaded structure disposed along the length direction of the recycling wheel. The guide assembly includes a guide movable component mounted on the trolley, a direction adjustment component mounted on the movable component, and a guide hook mounted on the adjustment component.
[0006] Furthermore, the guiding movable component includes a horizontally moving part mounted on the trolley and a vertically moving part disposed on the horizontally moving part; the direction adjustment component is mounted on the vertically moving part.
[0007] Furthermore, the horizontal moving part includes a lead screw motor mounted on the trolley, a linear lead screw mounted on the lead screw motor, a horizontal moving block threadedly connected to the linear lead screw, and a horizontal moving plate mounted on the horizontal moving block; the vertical moving part is mounted on the horizontal moving plate.
[0008] Furthermore, the length direction of the linear lead screw is the same as the length direction of the recycling wheel.
[0009] Furthermore, the vertical moving part includes a vertical slide rail disposed on the horizontal moving plate, a vertical slider slidably disposed on the vertical slide rail, a vertical moving plate mounted on the vertical slider, and a vertical cylinder mounted on the horizontal moving plate; the vertical cylinder is connected to the vertical moving plate; and the direction adjusting member is mounted on the vertical moving plate.
[0010] Furthermore, the direction adjustment component includes a fixed block mounted on the vertical moving plate, an internal thread disposed on the fixed block, and a direction adjustment roller threadedly connected to the internal thread; the guide hook is mounted on the direction adjustment roller.
[0011] Furthermore, the recycling component also includes a first recycling limiting plate and a second recycling limiting plate disposed at both ends of the recycling wheel.
[0012] Furthermore, the recycling drive component is a recycling motor mounted on the recycling bracket.
[0013] Furthermore, the trolley includes a support plate and four casters mounted on the bottom of the support plate.
[0014] Furthermore, the trolley also includes a fixed roller mounted on the support plate and a pull handle mounted on the fixed roller.
[0015] The beneficial effects of this utility model are as follows:
[0016] The structure for recycling and unwinding LED strips involved in this utility model uses a spiral recycling groove structure, which allows the LED strips to be wound evenly along the spiral trajectory, avoiding the problems of LED strips stacking and knotting in traditional winding methods, thereby reducing LED strip damage and inconvenience during use. Attached Figure Description
[0017] Figure 1 This is a three-dimensional schematic diagram of a structure for the recycling and deployment of LED strips according to an embodiment of the present invention;
[0018] Figure 2 for Figure 1 Exploded view of the structure used for the recycling and deployment of LED strips;
[0019] Figure 3 for Figure 1 Exploded view of the recycling component used for the recycling and deployment of LED strips.
[0020] Reference numerals: 10, trolley; 20, recovery assembly; 30, guide assembly; 21, recovery bracket; 22, recovery component; 23, recovery drive component; 220, rotating roller; 221, recovery wheel; 222, recovery trough; 31, guide movable component; 32, direction adjustment component; 33, guide hook; 310, lead screw motor; 311, linear lead screw; 312, horizontal moving block; 313, horizontal moving plate; 314, vertical slide rail; 315, vertical slider; 316, vertical moving plate; 317, vertical cylinder; 320, fixing block; 321, internal thread; 322, direction adjustment roller; 223, first recovery limit plate; 224, second recovery limit plate; 11, support plate; 12, caster wheel; 13, fixed roller; 14, pull handle. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] In the description of this utility model, it should be noted that the terms "vertical direction," "up," "down," and "horizontal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0023] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or a connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0024] Please see Figures 1 to 3This invention relates to a structure for the recycling and deployment of LED strips, comprising a trolley 10, a recycling assembly 20 mounted on the trolley 10 for recycling LED strips, and a guide assembly 30 mounted on the trolley 10. The recycling assembly 20 includes a recycling bracket 21 mounted on the trolley 10, a recycling component 22 rotatably mounted on the recycling bracket 21, and a recycling drive component 23 mounted on the recycling bracket 21 for driving the recycling component 22. The recycling component 22 includes a rotating roller 220 rotatably mounted on the recycling bracket 21, a recycling wheel 221 mounted on the rotating roller 220, and a recycling groove 222 disposed on the recycling wheel 221. The recycling groove 222 is an externally threaded structure disposed along the length of the recycling wheel 221. The guide assembly 30 includes a guide movable component 31 mounted on the trolley 10, a direction adjustment component 32 mounted on the movable component, and a guide hook 33 mounted on the direction adjustment component 32.
[0025] The working principle of the structure for recycling and unfolding LED strips of this utility model is as follows: When the LED strip needs to be recycled, the recycling drive 23 is activated, which drives the rotating roller 220 on the recycling bracket 21 to rotate, thereby driving the coaxial recycling wheel 221 to rotate synchronously, generating a recycling pull force. The LED strip to be recycled is pulled towards the recycling wheel 221. Under the action of the recycling pull force, the LED strip will automatically embed into the spiral trajectory of the threaded groove. As the recycling wheel 221 rotates, the LED strip is wrapped layer by layer and evenly in the recycling groove 222 along the "threaded path", avoiding the problem of LED strips stacking and knotting in the traditional winding method, and realizing orderly storage.
[0026] Compared to existing technologies, the structure for recycling and unwinding LED strips in this invention, through the spiral recycling groove 222, allows the LED strip to be evenly wound along the spiral trajectory, avoiding the problems of LED strips stacking and knotting in traditional winding methods, thereby reducing LED strip damage and inconvenience during use; the LED strip is evenly wound layer by layer along the spiral track, making storage more orderly, convenient for management and retrieval, and improving work efficiency; the recycling drive component 23 enables the LED strip recycling process to be completed automatically, reducing the tediousness of manual operation and saving time and labor; the structure of the guide component 30 and guide hook 33 can assist in the wiring of the LED strip, making it more convenient and faster, especially when wiring in complex environments, it can improve the accuracy and efficiency of wiring.
[0027] Please refer to Figure 2 and Figure 3The guide assembly 31 includes a horizontally moving part mounted on the trolley 10 and a vertically moving part disposed on the horizontally moving part; a direction adjustment part 32 is mounted on the vertically moving part. It allows the guide assembly 30 to be adjusted horizontally, enabling the light strip to adapt to different horizontal position requirements during wiring or retrieval; it also allows the guide assembly 30 to be adjusted vertically, enabling the light strip to adapt to different vertical height requirements during wiring or retrieval; through adjustment in both horizontal and vertical directions, the position of the guide assembly 30 can be flexibly adjusted to adapt to wiring needs in different scenarios and environments, improving the flexibility of use; the position of the guide assembly 30 can be precisely adjusted in multiple directions, ensuring that the light strip can follow a predetermined path during wiring, improving the accuracy and aesthetics of wiring; it is suitable for various wiring environments, such as exhibitions, decoration, stage setups, etc., and can flexibly cope with the needs of different heights and positions; by adjusting the horizontal and vertical positions, it can adapt to light strip wiring of different lengths, improving the versatility of the equipment.
[0028] Please refer to Figure 3 The horizontal moving part includes a lead screw motor 310 mounted on the trolley 10, a linear lead screw 311 mounted on the lead screw motor 310, a horizontal moving block 312 threadedly connected to the linear lead screw 311, and a horizontal moving plate 313 mounted on the horizontal moving block 312; the vertical moving part is mounted on the horizontal moving plate 313. The lead screw motor 310 provides precise linear motion, ensuring very accurate positioning of the horizontal moving part; the threaded connection between the linear lead screw 311 and the horizontal moving block 312 allows for high-precision fine-tuning, making horizontal movement more precise and controllable; the lead screw motor 310 can be connected to a control system to achieve automated horizontal movement control, reducing manual operation and improving work efficiency; users can adjust the position of the horizontal moving part conveniently and quickly through the control panel or remote control system; the threaded connection between the linear lead screw 311 and the horizontal moving block 312 ensures the stability and reliability of the movement, reducing vibration and shaking during movement; the lead screw motor 310 and the lead screw make the structure more durable and extend the service life of the equipment.
[0029] The length direction of the linear lead screw 311 is the same as the length direction of the recovery wheel 221. The linear lead screw 311 runs in the same direction as the recovery wheel 221, ensuring that the movement direction of the horizontal moving part is consistent with the axis of the recovery wheel 221. This consistency makes the LED strip smoother during wiring and retrieval, reducing directional deviations. It also ensures the alignment accuracy between the horizontal moving part and the recovery wheel 221, making the LED strip more accurate when entering the recovery wheel 221 and avoiding jamming or offset caused by inconsistent directions. The consistent direction of the linear lead screw 311 and the recovery wheel 221 makes the movement of the LED strip smoother during wiring and retrieval, reducing resistance and improving efficiency. When the LED strip enters the recovery wheel 221, it can wind more evenly along the spiral groove, further avoiding uneven winding and knotting problems. The consistent length direction of the linear lead screw 311 and the recovery wheel 221 makes the entire device more compact, reducing space occupation and facilitating wiring and retrieval operations in limited space. It also optimizes the layout on the trolley 10, making the installation and maintenance of each component more convenient and improving the overall structural rationality.
[0030] The vertical moving part includes a vertical slide rail 314 mounted on a horizontal moving plate 313, a vertical slider 315 slidably mounted on the vertical slide rail 314, a vertical moving plate 316 mounted on the vertical slider 315, and a vertical cylinder 317 mounted on the horizontal moving plate 313; the vertical cylinder 317 is connected to the vertical moving plate 316; and a direction adjusting component 32 is mounted on the vertical moving plate 316. The structure of the vertical slide rail 314 and the slider ensures smooth and precise movement of the vertical moving part. The sliding of the slider on the slide rail enables high-precision vertical position adjustment; the vertical cylinder 317 provides stable vertical motion power, ensuring that the vertical moving plate 316 moves more accurately and smoothly in the vertical direction; combined with the dual adjustment function of the horizontal and vertical moving parts, the position of the guide component 30 can be adjusted simultaneously in both horizontal and vertical directions, making the wiring of the light strip more flexible and precise; it can adapt to the wiring requirements of different heights and positions, improving the versatility and applicability of the equipment; the structure of the vertical slide rail 314 and the slider ensures the motion stability of the vertical moving part, reducing vibration and shaking during the movement; the vertical cylinder 317 provides reliable vertical motion power, ensuring accurate and reliable position adjustment of the vertical moving plate 316.
[0031] The direction adjustment component 32 includes a fixed block 320 mounted on the vertical moving plate 316, an internal thread 321 provided on the fixed block 320, and a direction adjustment roller 322 threadedly connected to the internal thread 321; a guide hook 33 is mounted on the direction adjustment roller 322. The direction adjustment roller 322 is threadedly connected to the internal thread 321 of the fixed block 320. This connection method allows for very fine adjustment, ensuring minute positional adjustments of the guide hook 33. The threaded connection provides a stable and reliable connection, preventing the direction adjustment roller 322 from loosening or shifting during adjustment. By rotating the direction adjustment roller 322, the angle and position of the guide hook 33 can be easily adjusted, allowing the light strip to adapt to different directional requirements during wiring, improving wiring flexibility. It can be adjusted at multiple angles, suitable for different wiring environments and site conditions, improving the versatility of the equipment. The structure of the direction adjustment component 32 ensures that the position and angle of the guide hook 33 can be precisely adjusted, allowing the light strip to follow a predetermined path during wiring, improving wiring accuracy and aesthetics. Through fine direction adjustment, tangling and stacking problems caused by directional deviations during wiring can be reduced, ensuring a smooth wiring process.
[0032] Please refer to Figure 1 and Figure 2 The recycling component 22 also includes a first recycling limiting plate 223 and a second recycling limiting plate 224 disposed at both ends of the recycling wheel 221. The first recycling limiting plate 223 and the second recycling limiting plate 224 can effectively prevent the light strip from shifting laterally during the recycling process, ensuring that the position of the light strip on the recycling wheel 221 is always accurate; avoiding uneven winding and knotting problems caused by light strip shift, ensuring that the light strip can be evenly wound on the recycling wheel 221; the setting of the limiting plate makes the light strip more stable when entering the recycling wheel 221, reducing vibration and shaking caused by light strip shift, and improving the stability of the recycling process; the limiting plate can prevent the light strip from getting stuck on the edge of the recycling wheel 221 due to shift during the recycling process, reducing the risk of jamming and stalling; the limiting plate can prevent the light strip from being damaged by collision or friction during the recycling process, protecting the integrity and service life of the light strip; the limiting plate ensures that the light strip is not overstretched during the recycling process, maintaining the original shape of the light strip and avoiding deformation.
[0033] The recycling drive unit 23 is a recycling motor mounted on the recycling bracket 21. The recycling motor provides a stable and reliable power source, which can precisely control the rotation speed and direction of the recycling wheel 221, ensuring the smoothness and accuracy of the light strip recycling process. The motor structure typically has high reliability and a long service life, reducing downtime and maintenance time caused by power source failure. The recycling motor can be connected to the control system to realize automated light strip recycling control, reduce manual intervention, and improve work efficiency. Through the control system, users can remotely operate the recycling motor and conveniently and quickly adjust the operating status of the recycling wheel 221.
[0034] The trolley 10 includes a support plate 11 and four casters 12 mounted on the bottom of the support plate 11. The structure of the casters 12 allows the trolley 10 to move flexibly in multiple directions without frequent adjustments, improving ease of movement. Users can easily push the trolley 10, reducing physical exertion and improving work efficiency. The four casters 12, evenly distributed on the bottom of the support plate 11, make the trolley 10 more stable during movement, reducing the risk of tipping over. The four-wheel structure evenly distributes the load on the trolley 10, reducing the load pressure on individual wheels and extending their lifespan. The casters 12 typically have good ground adaptability, easily handling different types of surfaces such as smooth, uneven, hard, or soft surfaces, increasing the trolley 10's versatility. Some casters 12 have shock-absorbing functions, reducing vibration on uneven surfaces and protecting items placed on the trolley 10 from damage.
[0035] The cart 10 also includes a fixed roller 13 mounted on the support plate 11 and a pull handle 14 mounted on the fixed roller 13. The pull handle 14 allows users to push or pull the cart 10 more easily, reducing physical exertion and improving operational comfort. The combination of the fixed roller 13 and the pull handle 14 allows users to better control the direction when pushing the cart 10, especially when turning or passing through narrow spaces, making it more flexible and convenient. The fixed roller 13 can serve as a support point, making the cart 10 more stable during movement and reducing the risk of items falling due to tilting or imbalance of the cart 10. The combination of the fixed roller 13 and the support plate 11 can evenly distribute the load on the cart 10, reducing single-point pressure and improving overall stability. The fixed roller 13 can reduce the risk of the cart 10 sliding on uneven ground and improve the fixation effect of the cart 10, especially when temporary stops or placement of heavy objects are required.
[0036] The above description merely illustrates the preferred technical solution of this utility model, and while the description is relatively specific and detailed, it should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and this utility model also intends to include these modifications and variations.
Claims
1. A structure for recycling and unwinding of a light strip, characterized in that, The device includes a trolley, a recycling assembly mounted on the trolley for recycling LED strips, and a guide assembly mounted on the trolley. The recycling assembly includes a recycling bracket mounted on the trolley, a recycling component rotatably mounted on the recycling bracket, and a recycling drive component mounted on the recycling bracket for driving the recycling component. The recycling component includes a rotating roller rotatably mounted on the recycling bracket, a recycling wheel mounted on the rotating roller, and a recycling groove disposed on the recycling wheel. The recycling groove is an externally threaded structure disposed along the length of the recycling wheel. The guide assembly includes a guide movable component mounted on the trolley, a direction adjustment component mounted on the movable component, and a guide hook mounted on the direction adjustment component.
2. The structure for recycling and unwinding of the light strip according to claim 1, characterized in that, The guiding movable component includes a horizontal moving part mounted on the trolley and a vertical moving part disposed on the horizontal moving part; the direction adjustment component is mounted on the vertical moving part.
3. The structure for recycling and unwinding of the light strip according to claim 2, characterized in that, The horizontal moving part includes a lead screw motor mounted on the trolley, a linear lead screw mounted on the lead screw motor, a horizontal moving block threadedly connected to the linear lead screw, and a horizontal moving plate mounted on the horizontal moving block; the vertical moving part is mounted on the horizontal moving plate.
4. The structure for recycling and unwinding of the light strip according to claim 3, characterized in that, The length direction of the linear lead screw is the same as the length direction of the recycling wheel.
5. The structure for recycling and unwinding of the light strip according to claim 3, wherein, The vertical moving part includes a vertical slide rail disposed on the horizontal moving plate, a vertical slider sliding on the vertical slide rail, a vertical moving plate mounted on the vertical slider, and a vertical cylinder mounted on the horizontal moving plate; the vertical cylinder is connected to the vertical moving plate; and the direction adjusting component is mounted on the vertical moving plate.
6. The structure for recycling and unwinding of the light strip according to claim 5, wherein, The direction adjustment component includes a fixed block mounted on the vertical moving plate, an internal thread disposed on the fixed block, and a direction adjustment roller threadedly connected to the internal thread; the guide hook is mounted on the direction adjustment roller.
7. The structure for recycling and unwinding of the light strip according to claim 1, wherein, The recycling component also includes a first recycling limiting plate and a second recycling limiting plate disposed at both ends of the recycling wheel.
8. The structure for recycling and unwinding of the light strip according to claim 1, wherein, The recycling drive component is a recycling motor mounted on the recycling bracket.
9. The structure for recycling and unwinding of the light strip according to claim 1, wherein, The trolley includes a support plate and four casters mounted on the bottom of the support plate.
10. The structure for recycling and unwinding of the light strip according to claim 9, characterized in that, The trolley also includes a fixed roller mounted on the support plate and a pull handle mounted on the fixed roller.